International audienceThe increasing availability of geophysical models of the Earth's lithosphere and mantle has generated renewed interest in computation of theoretical gravity effects at global and regional scales. At the same time, the increasing availability of gravity gradient anomalies derived from satellite measurements, such as those provided by GOCE satellite, requires mathematical methods that directly model the gravity gradient anomalies in the same reference frame as GOCE gravity gradients. Our main purpose is to interpret these anomalies in terms of source and density distribution. Numerical integration methods for calculating gravity gradient values are generally based on a mass discretization obtained by decomposing the Eart...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...
ESA (European Space Agency) has released a series of new-generation Earth gravity field models compu...
Forward gravity modeling in the spectral domain traditionally relies on spherical approximation. How...
The GOCE satellite mission has the objective of measuring the Earth's gravitational field with an un...
International audienceA radial integration of spherical mass elements (i.e. tesseroids) is presented...
One of the most important stages in the computation of a global geopotential model is the computatio...
The formulas for the determination of the coefficients of the spherical harmonic expansion of the di...
We investigate the gravity gradient components corrected for major known anomalous density structure...
International audienceThe emergence of high resolution satellite measurements of the gravitational f...
The usefulness of long-wavelength potential field anomalies in lithospheric interpretation is greatl...
International audienceWe present a new analytical solution to compute the full-tensor gravity gradie...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
During the last few years, the determination of high-resolution global gravity field has gained mome...
The GOCE satellite mission is one of the main achievements of the satellite geodesy for the Earth’s ...
© 2016 Springer Science+Business Media Dordrecht. Global forward modelling of the Earth’s gravitatio...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...
ESA (European Space Agency) has released a series of new-generation Earth gravity field models compu...
Forward gravity modeling in the spectral domain traditionally relies on spherical approximation. How...
The GOCE satellite mission has the objective of measuring the Earth's gravitational field with an un...
International audienceA radial integration of spherical mass elements (i.e. tesseroids) is presented...
One of the most important stages in the computation of a global geopotential model is the computatio...
The formulas for the determination of the coefficients of the spherical harmonic expansion of the di...
We investigate the gravity gradient components corrected for major known anomalous density structure...
International audienceThe emergence of high resolution satellite measurements of the gravitational f...
The usefulness of long-wavelength potential field anomalies in lithospheric interpretation is greatl...
International audienceWe present a new analytical solution to compute the full-tensor gravity gradie...
We have developed the open-source software Tesseroids, a set of command-line programs to perform for...
During the last few years, the determination of high-resolution global gravity field has gained mome...
The GOCE satellite mission is one of the main achievements of the satellite geodesy for the Earth’s ...
© 2016 Springer Science+Business Media Dordrecht. Global forward modelling of the Earth’s gravitatio...
We present an accurate method for the calculation of gravitational potential (GP), vector (GV), and ...
ESA (European Space Agency) has released a series of new-generation Earth gravity field models compu...
Forward gravity modeling in the spectral domain traditionally relies on spherical approximation. How...